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R744 REFRIGERATION SYSTEM CONFIGURATIONS FOR SUPERMARKETS IN WARM CLIMATES

机译:R744温暖气候中超市的制冷系统配置

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Commercial refrigeration systems applying R744 as the only refrigerant still have a large potential in development regarding energy efficiency, heat recovery and cost efficiency. Special focus and emphasis has to be given to the system architecture with respect to increase the system efficiency when these units are operated at elevated ambient temperatures. The objective of this thorough theoretical study is to investigate the energy required for different R744 refrigeration systems at 25-50-75-100% cooling load conditions. All R744 system configurations are assumed to operate at high ambient temperatures (from 30 to 42°C) which mean only transcritical operations are considered for the following system configurations. Some alternatives are sustainable and viable competitors to conventional HFC supermarket refrigeration systems, up to now applied in warm climates: Standard booster cycle (baseline), Expander cycle (expander → electrical generator), R744 booster cycle with a mechanical subcooler (MS) unit: working fluid MS: hydrocarbon, Economiser I cycle (with a flash tank, i.e. parallel compression), Economiser II cycle (without a flash tank; i.e. parallel compression), Ejector supported parallel compression system. These different cycles are evaluated with advanced spreadsheets assuming realistic component performances.
机译:应用R744的商业制冷系统,因为唯一的制冷剂仍然具有关于能效,热回收和成本效率的发展潜力。当这些单位在高升高的环境温度下运行时,必须对系统架构提供特殊的重点和重点。这种彻底的理论研究的目的是研究不同R744制冷系统所需的能量在25-50-75-100%的冷却负荷条件下。假设所有R744系统配置在高环境温度(30至42°C)下操作,这意味着仅考虑跨临界操作的跨临界操作。一些替代方案是传统的HFC超市制冷系统可持续和可行的竞争对手,达到现在应用于温暖气候:标准增压循环(基线),扩展器周期(扩展器→发电机),R744带有机械过冷器(MS)单元的R744增强循环:工作流体MS:烃,透析器I循环(带闪存罐,即平行压缩),经济学机构II循环(没有闪蒸罐;即平行压缩),喷射器支撑的并联压缩系统。假设现实组件性能,使用高级电子表格进行评估这些不同的周期。

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